* Always generate type & symbol baselines * Accept changed shadowed baselines * Accept brand new type and symbol baselines * Allow `getTypeAtLocation` to return undefined in the type writer * Accept baselines which had missing type information * Bind container for dynamically names enum members so they may be printed * Accept type/symbol baselines for enums with computed members * First pass at reducing typeWriter memory overhead * Use generators to allow for type and symbol baselines with no cache * Accept new baselines for tests whose output was fixed by better newline splitting * Hard cap on number of declarations printed, cache declaration print text * handle differing newlines better still to handle RWC newlines * Lower abridging count, accept abridged baselines * Limit max RWC error output size, limit RWC type and symbol baseline input size * Move skip logic into type and symbol baseliner to streamline error handling * Accept removal of empty baselines * Canonicalize path earlier to handle odd paths in input files * Do canonicalization earlier still, also ensure parallel perf profiles for different targets do not trample one another * No need to pathify again
80 lines
1.3 KiB
Plaintext
80 lines
1.3 KiB
Plaintext
=== tests/cases/compiler/generics2.ts ===
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interface A { a: string; }
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>A : A
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>a : string
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interface B extends A { b: string; }
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>B : B
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>A : A
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>b : string
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interface C extends B { c: string; }
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>C : C
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>B : B
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>c : string
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interface G<T, U extends B> {
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>G : G<T, U>
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>T : T
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>U : U
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>B : B
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x: T;
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>x : T
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>T : T
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y: U;
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>y : U
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>U : U
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}
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var v1: {
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>v1 : { x: { a: string; }; y: { a: string; b: string; c: string; }; }
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x: { a: string; }
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>x : { a: string; }
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>a : string
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y: { a: string; b: string; c: string };
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>y : { a: string; b: string; c: string; }
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>a : string
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>b : string
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>c : string
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}; // Ok
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var v2: G<{ a: string }, C>; // Ok, equivalent to G<A, C>
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>v2 : G<{ a: string; }, C>
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>G : G<T, U>
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>a : string
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>C : C
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var v3: G<A, A>; // Error, A not valid argument for U
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>v3 : G<A, A>
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>G : G<T, U>
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>A : A
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>A : A
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var v4: G<G<A, B>, C>; // Ok
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>v4 : G<G<A, B>, C>
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>G : G<T, U>
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>G : G<T, U>
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>A : A
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>B : B
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>C : C
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var v5: G<any, any>; // Error, any does not satisfy constraint B
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>v5 : G<any, any>
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>G : G<T, U>
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var v6: G<any>; // Error, wrong number of arguments
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>v6 : any
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>G : G<T, U>
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var v7: G; // Error, no type arguments
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>v7 : any
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>G : G<T, U>
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